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Temporally variable environments maintain more beta-diversity in Mediterranean landscapes

机译:临时可变的环境在地中海景观中保持更多的beta多样性

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We examined the relationships between different environmental factors and the alpha and beta-diversity of terrestrial vertebrates (birds, mammals, amphibians and reptiles) in a Mediterranean region at the landscape level. We investigated whether the mechanisms underlying alpha and beta-diversity patterns are influenced by energy availability, habitat heterogeneity and temporal variability and if the drivers of the diversity patterns differed between both components of diversity. We defined alpha-diversity as synonym of species richness whereas beta-diversity was measured as distinctiveness. We evaluated a total of 13 different predictors using generalized linear mixed model (GLMM) analysis. Habitat spatial heterogeneity increased alpha-diversity, but contrastingly, it did not significantly affect beta-diversity among sites. Disturbed landscapes may show higher habitat spatial variation and higher alpha-diversity due to the contribution of highly generalist species that are wide-distributed and do not differ in composition (beta-diversity) among different sites within the region. Contrastingly, higher beta-diversity levels were negatively related to more stable sites in terms of temporal environmental variation. This negative relationship between environmental stability and beta-diversity levels is explained in terms of species adaptation to the local environmental conditions. Our study highlights the importance of temporal environmental variability in maintaining beta-diversity patterns under highly variable environmental conditions. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:我们在景观水平上检查了地中海地区不同环境因素与陆地脊椎动物(鸟类,哺乳动物,两栖动物和爬行动物)的α和β多样性之间的关系。我们调查了α和β多样性模式的潜在机制是否受到能量可用性,生境异质性和时间变异性的影响,以及多样性模式的驱动因素在多样性的两个组成部分之间是否不同。我们将α-多样性定义为物种丰富度的同义词,而将β-多样性定义为独特性。我们使用广义线性混合模型(GLMM)分析评估了总共13种不同的预测变量。栖息地的空间异质性增加了α多样性,但相反,它并未显着影响站点之间的β多样性。受干扰的景观可能表现出较高的栖息地空间变化和较高的alpha多样性,这是由于该地区不同地点之间分布广泛且组成(β多样性)没有差异的高度通才物种的贡献。相反,就时间环境变化而言,更高的β-多样性水平与更稳定的位点负相关。根据物种对当地环境条件的适应性来解释环境稳定性和β-多样性水平之间的这种负相关关系。我们的研究强调了在高度可变的环境条件下维持β多样性模式时环境变化的重要性。 (C)2015 Elsevier Masson SAS。版权所有。

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